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Simple and compact low-temperature power cycle 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F01K-007/32
  • F01K-025/08
  • F01K-013/00
  • F03G-007/00
출원번호 US-0314135 (2002-12-09)
발명자 / 주소
  • McClanahan, Timmons S.
  • Crim, Michael C.
출원인 / 주소
  • Tennessee Valley Authority
대리인 / 주소
    Sughrue Mion, PLLC
인용정보 피인용 횟수 : 81  인용 특허 : 12

초록

A simple, compact, and relatively efficient thermodynamic power cycle system and process for extracting heat from a heat source stream and converting a portion of the heat to mechanical power. The system and process are composed of the same series of four processing units or steps found in the most

대표청구항

1. A thermodynamic power cycle system for extracting a flow of heat from a heat source stream and generating mechanical power from the flow of heat by means of a working fluid flowing within a closed-loop cycle, said system comprising:means for transferring heat from the heat source stream to the wo

이 특허에 인용된 특허 (12)

  1. Ikegami Yasuyuki (Saga JPX) Uehara Haruo (Saga JPX), Energy converter.
  2. Baciu Petru (Two Lincoln Square Ap. 20 E New York NY 10023), Geothermal power plant with intermediate superheating and simultaneous generation of thermal and electrical energy.
  3. De Munari ; Delio, Installation for the production of energy which utilizes a source of heat or natural thermic differences in level.
  4. Smith, Ian K., Method and apparatus for converting thermal energy.
  5. Pope William L. (Walnut Creek CA) Pines Howard S. (El Cerrito CA) Doyle Padraic A. (Oakland CA) Silvester Lenard F. (Richmond CA), Method of optimizing performance of Rankine cycle power plants.
  6. Parker Sidney A. (5820 Diamond Oaks Drive South Fort Worth TX 76117), Power generation arrangement.
  7. Carson ; Don B., Power generation from refinery waste heat streams.
  8. Rojey Alexandre (Garches FRX), Process for converting heat to mechanical power with the use of a fluids mixture as the working fluid.
  9. Tanaka Seiyo (Tokyo JPX), Process for utilizing energy produced by the phase change of liquid.
  10. Enjo Naonori (Suita JPX) Aomi Hideki (Osaka JPX) Noguchi Masahiro (Osaka JPX) Ide Satoshi (Settsu JPX), Working fluids for Rankine cycle.
  11. Enjo Naonori (Suita JPX) Noguchi Masahiro (Osaka JPX) Ide Satoshi (Settsu JPX), Working fluids for Rankine cycle.
  12. Enjo Naonori (Suita JPX) Aomi Hideki (Osaka JPX) Noguchi Masahiro (Osaka JPX), Working fluids for rankine cycle.

이 특허를 인용한 특허 (81)

  1. Hart, Katherine; Held, Timothy James, Automated mass management control.
  2. Hart, Katherine; Held, Timothy James, Automated mass management control.
  3. Singh, Krishna P.; Rampall, Indresh; Rajkumar, Joseph, Autonomous self-powered system for removing thermal energy from pools of liquid heated by radioactive materials, and method of the same.
  4. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Carbon dioxide refrigeration cycle.
  5. Taylor, Dwayne Robert, Condenser, radiator, and fan module with Rankine cycle fan.
  6. Taniguchi,Hiroyoshi; Uda,Makoto, Cooling control device for condenser.
  7. Rewers, Gregory; Eisenmenger, Nadja; Brenk, Achim; Seher, Dieter; Magel, Hans-Christoph; Wengert, Andreas, Device and method for the recovery of waste heat from an internal combustion engine.
  8. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao, Driven starter pump and start sequence.
  9. Held, Timothy James; Vermeersch, Michael; Xie, Tao, Driven starter pump and start sequence.
  10. Ernst, Timothy C.; Nelson, Christopher R., Emissions-critical charge cooling using an organic rankine cycle.
  11. Ernst, Timothy C.; Nelson, Christopher R.; Zigan, James A., Energy recovery system and method using an organic rankine cycle with condenser pressure regulation.
  12. Ernst, Timothy C, Energy recovery system using an organic rankine cycle.
  13. Corley, Paul, Energy retriever system.
  14. Corley, Paul W., Energy retriever system.
  15. Corley, Paul W., Energy retriever system.
  16. Barnes, David M., Engine having integrated waste heat recovery.
  17. Tsuchino, Kazunori; Kawajiri, Kazuhiko; Sato, Minoru, Exhaust heat recovery system.
  18. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Heat engine and heat to electricity systems and methods.
  19. Held, Timothy J.; Miller, Jason D., Heat engine and heat to electricity systems and methods for working fluid fill system.
  20. Held, Timothy J.; Miller, Jason D., Heat engine and heat to electricity systems and methods with working fluid fill system.
  21. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Vermeersch, Michael; Xie, Tao, Heat engine and heat to electricity systems and methods with working fluid mass management control.
  22. Held, Timothy James; Hostler, Stephen; Miller, Jason D.; Vermeersch, Michael; Xie, Tao, Heat engine and heat to electricity systems and methods with working fluid mass management control.
  23. Held, Timothy James, Heat engine cycles for high ambient conditions.
  24. Kacludis, Alexander Steven; Hostler, Stephen R.; Zakem, Steve B., Heat engine system with a supercritical working fluid and processes thereof.
  25. Held, Timothy James, Heat engines with cascade cycles.
  26. Linney,Jonathan W.; Bibb,Michael B.; Bauer,Timothy Ray, Heat exchange system.
  27. Gurin, Michael H., Heat pump with integral solar collector.
  28. Mirmobin, Parsa; Strouse, Dennis, Heat recovery using radiant heat.
  29. Held, Timothy James, Hot day cycle.
  30. Gurin, Michael H., Hybrid power systems.
  31. Mirolli, Mark D.; Rhodes, Lawrence; Lerner, Yakov; Pelletier, Richard I., Method and apparatus for acquiring heat from multiple heat sources.
  32. Mirolli,Mark D.; Rhodes,Lawrence; Lerner,Yakov; Pelletier,Richard I., Method and apparatus for acquiring heat from multiple heat sources.
  33. Althaus, Rolf, Method and apparatus for operation of a power station.
  34. Moghtaderi, Behdad; Doroodchi, Elham, Method and system for generating power from a heat source.
  35. Goswami, D. Yogi; Chen, Huijuan; Stefanakos, Elias, Method and system for generating power from low- and mid- temperature heat sources using supercritical rankine cycles with zeotropic mixtures.
  36. Linney, Jonathan W.; Bibb, Michael B.; Bauer, Timothy Ray, Method for improving power plant thermal efficiency.
  37. Linney, Jonathan W.; Bibb, Michael B.; Bauer, Timothy Ray, Method for operating a heat exchanger in a power plant.
  38. Olia, Hamid; Schlesier, Jan, Method for operating a power plant.
  39. Gärtner, Jan; Koch, Thomas; Mercz, Jozsef Marton; Zygan, Andreas, Method for recovering heat losses of an internal combustion engine.
  40. Smith,Douglas Wilbert Paul, Method of converting energy.
  41. Vermeersch, Michael Louis; Bowan, Brett A.; Khairnar, Swapnil, Methods for reducing wear on components of a heat engine system at startup.
  42. Radcliff,Thomas D.; McCormick,Duane; Brasz,Joost J., Organic rankine cycle system for use with a reciprocating engine.
  43. Held, Timothy James; Vermeersch, Michael Louis; Xie, Tao; Miller, Jason, Parallel cycle heat engines.
  44. Taylor, Robert Warren; Roberts, James Easel; Booth, Charles Michael, Power plant emissions control using integrated organic rankine cycle.
  45. Bowan, Brett A., Process for controlling a power turbine throttle valve during a supercritical carbon dioxide rankine cycle.
  46. Pierson, Thomas L.; Leibowitz, Herman, Process utilizing high performance air-cooled combined cycle power plant with dual working fluid bottoming cycle and integrated capacity control.
  47. Ernst, Timothy C.; Nelson, Christopher R.; Zigan, James A., Rankine cycle condenser pressure control using an energy conversion device bypass valve.
  48. Niikura, Hiroyuki; Taniguchi, Hiroyoshi; Uda, Makoto; Katahira, Kiyoshi, Rankine cycle device of internal combustion engine.
  49. Ernst, Timothy C.; Nelson, Christopher R., Rankine cycle system and method.
  50. Ernst, Timothy C.; Nelson, Christopher R., Rankine cycle system and method.
  51. Baik, Young Jin; Yoon, Huyng Kee; Chang, Ki Chang; Kim, Min Sung; Lee, Young Soo; Ra, Ho Sang; Park, Seong Ryong; Park, Jun Tack, Rankine cycle system and method of controlling the same.
  52. Ernst, Timothy C.; Nelson, Christopher R., Rankine cycle waste heat recovery system.
  53. Ernst, Timothy C.; Nelson, Christopher R., Rankine cycle waste heat recovery system.
  54. Ernst, Timothy C.; Nelson, Christopher R., Rankine cycle waste heat recovery system.
  55. Nelson, Christopher R.; Ernst, Timothy C., Rankine cycle waste heat recovery system.
  56. Nelson, Christopher R.; Ernst, Timothy C., Rankine cycle waste heat recovery system.
  57. Nelson, Christopher R.; Ernst, Timothy C., Rankine cycle waste heat recovery system and method with improved EGR temperature control.
  58. Dane, Marten H., Reversible waste heat recovery system and method.
  59. Dane, Marten H., Reversible waste heat recovery system and method.
  60. Ernst, Timothy C.; Nelson, Christopher R., Split radiator design for heat rejection optimization for a waste heat recovery system.
  61. Xie, Tao; Vermeersch, Michael; Held, Timothy, Supercritical carbon dioxide power cycle for waste heat recovery.
  62. Wylie, Roger, Supercritical combined cycle for generating electric power.
  63. Vermeersch, Michael Louis, Supercritical working fluid circuit with a turbo pump and a start pump in series configuration.
  64. Juchymenko, Victor, Supplementary thermal energy transfer in thermal energy recovery systems.
  65. Freund, Sebastian Walter; Lehar, Matthew Alexander; Antel, Jr., William Joseph; Huck, Pierre Sébastien; Buck, Hannes Christopher; Kirsten, Trevor James; Kohl, Kenneth William; Lampo, Matthew Michael; Jones, Charles Michael; Gaikwad, Amit; Nord, Lars Olof, System and method for generating electric power.
  66. Dariavach, Nader G.; Kozel, Michael John; Liang, Jin, System and method for generating electricity from component waste heat.
  67. Held, Timothy James, System and method for managing thermal issues in gas turbine engines.
  68. Held, Timothy James, System and method for managing thermal issues in one or more industrial processes.
  69. Ernst, Timothy C.; Morris, Dave, System and method for regulating EGR cooling using a Rankine cycle.
  70. Ernst, Timothy C.; Morris, Dave, System and method for regulating EGR cooling using a rankine cycle.
  71. Milam, Stanley Nemec; Taylor, Richard Bruce, System and process for generation of electrical power.
  72. Gericke, Bernd; Beukenberg, Markus, System for the generation of mechanical and/or electrical energy.
  73. Ast, Gabor; Kopecek, Herbert; Schoewel, Simon, Systems and methods for cold startup of rankine cycle devices.
  74. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion device.
  75. Held, Timothy J.; Hostler, Stephen; Miller, Jason D.; Hume, Brian F., Thermal energy conversion method.
  76. McCutchen, Wilmot H.; McCutchen, David J., Vapor vortex heat sink.
  77. McCutchen, Wilmot H.; McCutchen, David J., Vapor vortex heat sink.
  78. Ernst, Timothy C.; Zigan, James A., Waste heat recovery system.
  79. Ernst, Timothy C.; Nelson, Christopher R., Waste heat recovery system for recapturing energy after engine aftertreatment systems.
  80. Ernst, Timothy C.; Nelson, Christopher R., Waste heat recovery system with constant power output.
  81. Ernst, Timothy C.; Nelson, Christopher R., Waste heat recovery system with constant power output.
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